International audienceThe massive uptake of compatible osmolytes such as betaine, taurine, and myo-inositol is a protective response shared by all eukaryotes exposed to hypertonic stress. Their accumulation results mostly from the expression of specific transporters triggered by the transcriptional factor NFAT5/TonEBP. This allows the recovery of the cell volume without increasing intracellular ionic strength. In this study we consider the assembly and dissociation of mRNA stress granules (SGs) in hypertonic-stressed cells and the role of compatible osmolytes. In agreement with in vitro results obtained on isolated mRNAs, both macromolecular crowding and a high ionic strength favor the assembly of SGs in normal rat kidney epithelial cells. ...
The kidney medulla of mammals undergoes large changes in tonicity in parallel with the tonicity of t...
While hyperosmolality of the kidney medulla is essential for urinary concentration, it imposes a gre...
Stress granules (SGs) are assemblies of selective messenger RNAs (mRNAs), translation factors, and R...
International audienceThe massive uptake of compatible osmolytes such as betaine, taurine, and myo-i...
Various types of cells animal tissues consist of need to adapt to intracellular as well as extracell...
International audienceUpon hypertonic stress most often resulting from high salinity, cells need to ...
When the renal medulla becomes hypertonic in association with the formation of concentrated urine, t...
Hypertonicity-induced accumulation of organic osmolytes in papillary interstitial cells.BackgroundMe...
Coordinate regulation of organic osmolytes in renal cells. Adaptation of cells to prolonged hyperton...
Kidney medullary cells in situ, as well as kidney-derived Madin-Darby canine kidney (MDCK) cells acc...
Les granules de stress (GSs) sont des entités cytoplasmiques très dynamiques et dépourvues de membra...
Myo-inositol is a major compatible osmolyte accumulated in the hypertonic renal medulla and in Madin...
Canine renal cells in culture (MDCK cells) accumulate organic osmolytes, including myo-inositol (MI)...
Cells of the hypertonic renal medulla accumulate high concentrations of the non-perturbing osmolytes...
Most theories predict that macromolecular crowding stabilizes globular proteins, but recent studies ...
The kidney medulla of mammals undergoes large changes in tonicity in parallel with the tonicity of t...
While hyperosmolality of the kidney medulla is essential for urinary concentration, it imposes a gre...
Stress granules (SGs) are assemblies of selective messenger RNAs (mRNAs), translation factors, and R...
International audienceThe massive uptake of compatible osmolytes such as betaine, taurine, and myo-i...
Various types of cells animal tissues consist of need to adapt to intracellular as well as extracell...
International audienceUpon hypertonic stress most often resulting from high salinity, cells need to ...
When the renal medulla becomes hypertonic in association with the formation of concentrated urine, t...
Hypertonicity-induced accumulation of organic osmolytes in papillary interstitial cells.BackgroundMe...
Coordinate regulation of organic osmolytes in renal cells. Adaptation of cells to prolonged hyperton...
Kidney medullary cells in situ, as well as kidney-derived Madin-Darby canine kidney (MDCK) cells acc...
Les granules de stress (GSs) sont des entités cytoplasmiques très dynamiques et dépourvues de membra...
Myo-inositol is a major compatible osmolyte accumulated in the hypertonic renal medulla and in Madin...
Canine renal cells in culture (MDCK cells) accumulate organic osmolytes, including myo-inositol (MI)...
Cells of the hypertonic renal medulla accumulate high concentrations of the non-perturbing osmolytes...
Most theories predict that macromolecular crowding stabilizes globular proteins, but recent studies ...
The kidney medulla of mammals undergoes large changes in tonicity in parallel with the tonicity of t...
While hyperosmolality of the kidney medulla is essential for urinary concentration, it imposes a gre...
Stress granules (SGs) are assemblies of selective messenger RNAs (mRNAs), translation factors, and R...